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Ark, Thomas J. Vander; Liebtag, Emily; McClennen, Nate – ASCD, 2020
"Place: it's where we're from; it's where we're going. . . . It asks for our attention and care. If we pay attention, place has much to teach us." With this belief as a foundation, "The Power of Place" offers a comprehensive and compelling case for making communities the locus of learning for students of all ages and…
Descriptors: Authentic Learning, Place Based Education, Learner Engagement, Educational Principles
Weber, Eric; Ellis, Amy; Kulow, Torrey; Ozgur, Zekiye – Mathematics Teacher, 2014
Encouraging students to reason with quantitative relationships can help them develop, understand, and explore mathematical models of real-world phenomena. Through two examples--modeling the motion of a speeding car and the growth of a Jactus plant--this article describes how teachers can use six practical tips to help students develop quantitative…
Descriptors: Mathematical Aptitude, Mathematical Models, Problem Based Learning, Motion
Putnam, A. R. – 2001
Research on how the brain works has resulted in wider-scale adoption of the principles of problem-based learning (PBL) in many areas of education, including technology education. The PBL approach is attractive to curriculum developers because it is based on interdisciplinary learning, results in multiple outcomes, is integrated and…
Descriptors: Active Learning, Adoption (Ideas), Classroom Techniques, Competency Based Education

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